Restriction factors and pattern recognition receptors are important components of intrinsic cellular defenses against viral infection. Mammalian TRIM5α proteins are restriction factors and receptors that target the capsid cores of retroviruses and activate ubiquitin-dependent antiviral responses upon capsid recognition. Here, we report crystallographic and functional studies of the TRIM5α B-box 2 domain, which mediates higher-order assembly of TRIM5 proteins. The B-box can form both dimers and trimers, and the trimers can link multiple TRIM5α proteins into a hexagonal net that matches the lattice arrangement of capsid subunits and enables avid capsid binding. Two modes of conformational flexibility allow TRIM5α to accommodate the variable curvature of retroviral capsids. B-box mediated interactions also modulate TRIM5α's E3 ubiquitin ligase activity, by stereochemically restricting how the N-terminal RING domain can dimerize. Overall, these studies define important molecular details of cellular recognition of retroviruses, and how recognition links to downstream processes to disable the virus.
Mechanism of B-box 2 domain-mediated higher-order assembly of the retroviral restriction factor TRIM5α.
逆转录病毒限制因子TRIM5α的B-box 2结构域介导的高级组装机制
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作者:Wagner Jonathan M, Roganowicz Marcin D, Skorupka Katarzyna, Alam Steven L, Christensen Devin, Doss Ginna, Wan Yueping, Frank Gabriel A, Ganser-Pornillos Barbie K, Sundquist Wesley I, Pornillos Owen
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2016 | 起止号: | 2016 Jun 2; 5:e16309 |
| doi: | 10.7554/eLife.16309 | 种属: | Viral |
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